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Fracture morphology and viscous transport
Authors:J. Schmittbuhl   A. Steyer   L. Jouniaux  R. Toussaint
Affiliation:aInstitut de Physique du Globe de Strasbourg, UMR 7516, 5 rue René Descartes, 67084 Strasbourg Cedex, France
Abstract:
The morphology of a fracture in a granite block is sampled using a high resolution profiler providing a 3999×4000 pixel image of the roughness. We checked that a self-affine model is an accurate geometrical model of the fracture morphology on the basis of a spectral analysis. We also estimated the topothesy of the experimental surface to be View the MathML source and the roughness exponent to be ζ≈0.78. A finite difference scheme of the Stokes equation with a lubrication approximation was used to model the viscous flow through a fracture aperture defined as the gap between the experimental fracture surface and a flat plane. We finally compare our numerical results to experimental measurements of the flux through the fracture of a glycerol/water mixture (to be at sufficiently low Reynolds number where Stokes equations holds) changing the average aperture of the fracture. The comparison is successful despite a limited resolution of the experimental measurements. Interestingly we show that only long wavelengths of the fracture morphology control the fracture hydraulic conductivity.
Keywords:Fracture roughness   Fluid flow   Hydraulic conductivity
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